Testis-specific serine protease PRSS54 regulates acrosomal granule localization and sperm head morphogenesis in mice

Author:

Shen Chunling1,Xiong Wenfeng12,Li Chaojie12,Ge Haoyang1,Shen Yan1,Tang Lingyun1,Zhang Hongxin1,Lu Shunyuan1,Fei Jian3,Wang Zhugang123

Affiliation:

1. State Key Laboratory of Medical Genomics, Research Center for Experimental Medicine, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine , Shanghai , China

2. School of Life Sciences and Biotechnology, Shanghai Jiao Tong University , Shanghai , China

3. Shanghai Engineering and Technology Research Center for Model Animals, Shanghai Model Organisms Center, Inc. , Shanghai , China

Abstract

Abstract Serine proteases (PRSS) constitute nearly one-third of all proteases, and many of them have been identified to be testis-specific and play significant roles during sperm development and male reproduction. PRSS54 is one of the testis-specific PRSS in mouse and human but its physiological function remains largely unclear. In the present study, we demonstrate in detail that PRSS54 exists not only in testis but also in mature sperm, exhibiting a change in protein size from 50 kDa in testis to 42 kDa in sperm. Loss of PRSS54 in mice results in male subfertility, acrosome deformation, defective sperm–zona penetration, and phenotypes of male subfertility and acrosome deformation can be rescued by Prss54 transgene. Ultrastructure analyses by transmission electronic microscopy further reveal various morphological abnormalities of Prss54−/− spermatids during spermiogenesis, including unfused vacuoles in acrosome, detachment and eccentrical localization of the acrosomal granules, and asymmetrical elongation of the nucleus. Subcellular localization of PRSS54 display that it appears in the acrosomal granule at the early phase of acrosome biogenesis, then extends along the inner acrosomal membrane, and ultimately presents in the acrosome region of the mature sperm. PRSS54 interacts with acrosomal proteins ZPBP1, ZPBP2, ACRBP, and ZP3R, and loss of PRSS54 affects the distribution of these proteins in testis and sperm, although their protein levels are largely unaffected. Moreover, Prss54−/− sperm are more sensitive to acrosome reaction inducers.

Funder

National Natural Science Foundation of China

Science and Technology Commission of Shanghai Municipality

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,General Medicine,Reproductive Medicine

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